Title of article
Effect of ZnO Addition on Structural Properties of ZnO-PANi/Carbon Black Thin Films
Author/Authors
BINTI MAT TAHIR, SITI FARIZA Universiti Kebangsaan Malaysia - Faculty Science and Technology - School of Applied Physics, Malaysia , RAMLI, NORHASHIMAH Universiti Kebangsaan Malaysia - Faculty of Science Technology - School of Applied Physics, Malaysia , IZZUDDIN, IZURA Universiti Kebangsaan Malaysia - Faculty Science and Technology - School of Applied Physics, Malaysia , MAT SALLEH, MUHAMAD Universiti Kebangsaan Malaysia - Institute of Microengineering and Nanoelectronics (IMEN), Malaysia , YAHAYA, MUHAMMAD Universiti Kebangsaan Malaysia - Faculty of Science and Technology - School of Applied Physics, Malaysia , UMAR, AKRAJAS ALI Universiti Kebangsaan Malaysia - Institute of Microengineering and Nanoelectric (IMEN), Malaysia , HAJI JUMALI, MOHAMMAD HAFIZUDDIN Universiti Kebangsaan Malaysia - Faculty of Science Technology - School of Applied Physics, Malaysia
From page
1001
To page
1004
Abstract
The aim of this project was to investigate the effect of ZnO addition on the structural properties of ZnO-PANi/carbon black thin films. The sol gel method was employed for the preparation of ZnO sol. The sol was dried for 24 h at 100°C and then annealed at 600°C for 5 h. XRD characterization of the ZnO powder showed the formation of wurtzite type ZnO crystals. The ZnO powder were mixed into PANi/carbon black solution which was dissolved into M-Pyrol, N-Methyl-2-Pyrrolidinone (NMP) to produce a composite solution of ZnO-PANi/carbon black. The weight ratio of ZnO were 4 wt%, 6 wt% and 8 wt%. The composite solutions were deposited onto glass substrates using a spin-coating technique to fabricate ZnO-PANi/carbon black thin films. AFM characterization showed the decreasing of average roughness from 7.98 nm to 2.23 nm with the increment of ZnO addition in PANi/carbon black films. The thickness of the films also decreased from 59.5 nm to 28.3 nm. FESEM image revealed that ZnO-PANi/carbon black thin films have changed into agglomerated surface morphology resulting in the increment of porosity of the films.
Keywords
Sol gel method , spin coating technique , structural properties , ZnO thin film
Record number
2555469
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